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非对称响应概念解释了多种应激源暴露和释放的生态后果。

The Asymmetric Response Concept explains ecological consequences of multiple stressor exposure and release.

作者信息

Vos Matthijs, Hering Daniel, Gessner Mark O, Leese Florian, Schäfer Ralf B, Tollrian Ralph, Boenigk Jens, Haase Peter, Meckenstock Rainer, Baikova Daria, Bayat Helena, Beermann Arne, Beisser Daniela, Beszteri Bánk, Birk Sebastian, Boden Lisa, Brauer Verena, Brauns Mario, Buchner Dominik, Burfeid-Castellanos Andrea, David Gwendoline, Deep Aman, Doliwa Annemie, Dunthorn Micah, Enß Julian, Escobar-Sierra Camilo, Feld Christian K, Fohrer Nicola, Grabner Daniel, Hadziomerovic Una, Jähnig Sonja C, Jochmann Maik, Khaliq Shaista, Kiesel Jens, Kuppels Annabel, Lampert Kathrin P, Le T T Yen, Lorenz Armin W, Madariaga Graciela Medina, Meyer Benjamin, Pantel Jelena H, Pimentel Iris Madge, Mayombo Ntambwe Serge, Nguyen Hong Hanh, Peters Kristin, Pfeifer Svenja M, Prati Sebastian, Probst Alexander J, Reiner Dominik, Rolauffs Peter, Schlenker Alexandra, Schmidt Torsten C, Shah Manan, Sieber Guido, Stach Tom Lennard, Tielke Ann-Kathrin, Vermiert Anna-Maria, Weiss Martina, Weitere Markus, Sures Bernd

机构信息

Ruhr University Bochum, Faculty of Biology and Biotechnology, Theoretical and Applied Biodiversity Research, Bochum, Germany.

Aquatic Ecology, University of Duisburg-Essen, Essen, Germany; Centre for Water and Environmental Research (ZWU), Essen, Germany.

出版信息

Sci Total Environ. 2023 May 10;872:162196. doi: 10.1016/j.scitotenv.2023.162196. Epub 2023 Feb 11.

Abstract

Our capacity to predict trajectories of ecosystem degradation and recovery is limited, especially when impairments are caused by multiple stressors. Recovery may be fast or slow and either complete or partial, sometimes result in novel ecosystem states or even fail completely. Here, we introduce the Asymmetric Response Concept (ARC) that provides a basis for exploring and predicting the pace and magnitude of ecological responses to, and release from, multiple stressors. The ARC holds that three key mechanisms govern population, community and ecosystem trajectories. Stress tolerance is the main mechanism determining responses to increasing stressor intensity, whereas dispersal and biotic interactions predominantly govern responses to the release from stressors. The shifting importance of these mechanisms creates asymmetries between the ecological trajectories that follow increasing and decreasing stressor intensities. This recognition helps to understand multiple stressor impacts and to predict which measures will restore communities that are resistant to restoration.

摘要

我们预测生态系统退化和恢复轨迹的能力是有限的,尤其是当损害是由多种压力源造成时。恢复可能快也可能慢,可能是完全恢复,也可能是部分恢复,有时会导致新的生态系统状态,甚至可能完全失败。在这里,我们引入了非对称响应概念(ARC),它为探索和预测生态系统对多种压力源的响应速度和程度以及从压力源中释放出来的情况提供了一个基础。ARC认为,有三个关键机制控制着种群、群落和生态系统的轨迹。压力耐受性是决定对不断增加的压力源强度作出响应的主要机制,而扩散和生物相互作用则主要控制对从压力源中释放出来的情况的响应。这些机制重要性的变化在随着压力源强度增加和减少的生态轨迹之间造成了不对称。这种认识有助于理解多种压力源的影响,并预测哪些措施将恢复那些对恢复具有抗性的群落。

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